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由可再生二氧化碳和香草醛合成的具有自修复和闭环可回收性的生物基聚氨酯-脲

Bio-Based Polyurethane-Urea with Self-Healing and Closed-Loop Recyclability Synthesized from Renewable Carbon Dioxide and Vanillin.

作者信息

Han Tianyi, Tian Tongshuai, Jiang Shan, Lu Bo

机构信息

School of Medical Informatics, Chongqing Medical University, Chongqing 400016, China.

School of Materials Science and Engineering, Shanghai University, Shanghai 200444, China.

出版信息

Polymers (Basel). 2024 Aug 10;16(16):2277. doi: 10.3390/polym16162277.

Abstract

Developing recyclable and self-healing non-isocyanate polyurethane (NIPU) from renewable resources to replace traditional petroleum-based polyurethane (PU) is crucial for advancing green chemistry and sustainable development. Herein, a series of innovative cross-linked Poly(hydroxyurethane-urea)s (PHUUs) were prepared using renewable carbon dioxide (CO) and vanillin, which displayed excellent thermal stability properties and solvent resistance. These PHUUs were constructed through the introduction of reversible hydrogen and imine bonds into cross-linked polymer networks, resulting in the cross-linked PHUUs exhibiting thermoplastic-like reprocessability, self healing, and closed-loop recyclability. Notably, the results indicated that the VL-TTD*-50 with remarkable hot-pressed remolding efficiency (nearly 98.0%) and self-healing efficiency (exceeding 95.0%) of tensile strength at 60 °C. Furthermore, they can be degraded in the 1M HCl and THF (: = 2:8) solution at room temperature, followed by regeneration without altering their original chemical structure and mechanical properties. This study presents a novel strategy for preparing cross-linked PHUUs with self-healing and closed-loop recyclability from renewable resources as sustainable alternatives for traditional petroleum-based PUs.

摘要

从可再生资源开发可回收且自修复的非异氰酸酯聚氨酯(NIPU)以替代传统的石油基聚氨酯(PU),对于推动绿色化学和可持续发展至关重要。在此,使用可再生二氧化碳(CO)和香草醛制备了一系列创新的交联聚(羟基聚氨酯 - 脲)(PHUU),其表现出优异的热稳定性和耐溶剂性。这些PHUU通过在交联聚合物网络中引入可逆的氢键和亚胺键构建而成,使得交联的PHUU具有类似热塑性的可再加工性、自修复性和闭环可回收性。值得注意的是,结果表明VL - TTD * - 50在60°C时具有显著的热压重塑效率(近98.0%)和自修复效率(超过95.0%)的拉伸强度。此外,它们可在室温下于1M盐酸和THF(体积比 = 2:8)溶液中降解,随后再生且不改变其原始化学结构和机械性能。本研究提出了一种从可再生资源制备具有自修复和闭环可回收性的交联PHUU的新策略,作为传统石油基PU的可持续替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/487a/11359345/a0e551de626d/polymers-16-02277-g001.jpg

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